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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Environmental isotopes and noble gases in the deep aquifer system of Kazan Trona Ore Field, Ankara, central Turkey and links to paleoclimate
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Environmental isotopes and noble gases in the deep aquifer system of Kazan Trona Ore Field, Ankara, central Turkey and links to paleoclimate

机译:土耳其中部安卡拉喀山Trona矿石田深层含水层系统中的环境同位素和稀有气体,以及与古气候的联系

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Environmental isotopes and noble gases in groundwater samples from the Kazan Trona Ore Field are studied to establish the temperature change between the Holocene and the late Pleistocene. Noble gas temperatures (NGTs) presented in this study add an important facet to the global paleotemperature map in the region between Europe and North Africa. The groundwater system under investigation consists of three different aquifers named shallow, middle and deep in which δ~18O and δ~2H vary from -8.10% to -12.80% and from -60.89% to -92.60% VSMOW, respectively. The average isotopic depletion between unconfined and confined parts of the system is -2.5% in δ~18O and -20% in δ~2H. It is not possible to explain this depletion solely with the elevation effect. Recharge temperatures derived from dissolved atmospheric noble gases reflect the current average yearly ground temperatures (13°C) for samples collected near the recharge area but are 3 to 8°C lower than today's temperatures in the deep aquifer system. Low~14C activities and high He excesses in the confined parts of the aquifer system suggest that the water in the deep aquifer was recharged during the last Pleistocene under considerably cooler climatic conditions.
机译:为了研究全新世和晚更新世之间的温度变化,研究了喀山Trona矿田地下水样品中的环境同位素和稀有气体。这项研究中提出的稀有气体温度(NGTs)为欧洲和北非之间区域的全球古温度图增加了一个重要方面。被调查的地下水系统由三个不同的浅层,中层和深层含水层组成,其中δ〜18O和δ〜2H的VSMOW分别从-8.10%到-12.80%和-60.89%到-92.60%。系统的受限和受限部分之间的平均同位素消耗在δ〜18O中为-2.5%,在δ〜2H中为-20%。不可能仅用仰角效应来解释这种消耗。由溶解的大气稀有气体产生的补给温度反映了在补给区附近收集的样品的当前年平均地面温度(13°C),但比当今深层含水层系统的温度低3至8°C。含水层系统狭窄部分的低〜14C活动和高He过量表明,在最后一个更新世期间,在相当凉爽的气候条件下,深层含水层中的水得到了补给。

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